法兰节点胶装损伤对复合绝缘子动力特性影响分析Analysis of the influence of glued flange joint damage on dynamic properties of composite insulator
邸悦伦,曹枚根,周曙琛,张若愚
DI Yuelun,CAO Meigen,ZHOU Shuchen,ZHANG Ruoyu
摘要(Abstract):
为研究法兰胶装节点损伤与复合绝缘子套管动力特性变化的关系,以±800 kV复合绝缘子为研究分析对象,建立绝缘子及胶体有限元模型,并预设胶体高度方向和转角方向上的损伤影响因子,计算分析复合绝缘子损伤前后的动力特性。结果表明,复合绝缘子法兰节点处胶装层界面开裂及变形可能会导致整体结构刚度降低。法兰节点的弯曲刚度下降与法兰沿胶体的转角及高度方向上的开裂面积基本呈线性关系,胶体在法兰转角方向开裂面积与法兰节点本身的弯曲刚度面积下降的关系也近似为线性,振动方向的胶体破坏对法兰刚度影响最大。
In order to explore the relationship between glued flange joint damage and the change of dynamic characteristics of composite insulator bushing,the paper takes a ± 800 kV composite insulator as the research object and establishes the finite element model of insulator. Moreover,it presets the damage influence factors in colloid height and angle direction and calculates the dynamic characteristics of composite insulators before and after damage. The results show that the crack and deformation of the adhesive layer interface at the flange joints of composite insulators may reduce the overall structural stiffness. The decrease of the flange joint's bending stiffness is linear with the flange's cracking area in colloid height and angle direction. The decreased cracking area of the colloid in the height direction of the flange angle is also approximately linear with the reduced bending stiffness area of the flange joint.The colloid damage in the vibration direction has the most significant impact on the flange stiffness.
关键词(KeyWords):
复合绝缘子;动力特性;法兰胶装节点;弯曲刚度;损伤因子
composite insulator;dynamic characteristics;glued flange joint;bending stiffness;damage factor
基金项目(Foundation): 电网输变电设备防灾减灾国家重点实验室开放基金项目(B316AF190007)
作者(Author):
邸悦伦,曹枚根,周曙琛,张若愚
DI Yuelun,CAO Meigen,ZHOU Shuchen,ZHANG Ruoyu
DOI: 10.19585/j.zjdl.202207009
参考文献(References):
- [1]吴光亚,蔡炜,苏雪源.复合硅橡胶材料在外绝缘领域的应用[J].高电压技术,2000,26(5):56-57.
- [2]孙帮新,曹枚根.特高压新松换流站直流场设备抗震设计及能力考核[J].高压电器,2018,54(12):24-35.
- [3]任冠雄,曹枚根,冯国栋,等.特高压换流站直流场复合支柱绝缘子动力特性测试研究[J].高压电器,2020,56(2):77-84.
- [4]俞越中,苏扩军,吴桂军,等.110 kV复合材料干式电抗器抗震性能振动台试验研究[J].建筑结构,2016,46(增刊2):262-266.
- [5]曹枚根,周福霖,谭平,等.地震作用下断路器动力时程分析及阻尼效应研究[J].高压电器,2010,46(7):27-35.
- [6] JOHNSON F,ILIEV K.Earthquake effects on SDG&E's500/230 kV imperial valley substation[C]//2012 IEEE Power and Energy Society General Meeting,USA.IEEE,2012:1-2.
- [7] GOODNO B J,GOULD N C,CALDWELL P,et al.Effects of the January 2010 Haitian earthquake on selected electrical equipment[J]. Earthquake Spectra,2011,27(S1):251-276.
- [8]孙楚平.复合材料绝缘子抗震性能试验研究[D].北京:华北电力大学,2016.
- [9]吴光亚,孙岗,张锐,等.特高压空心复合支柱绝缘子机械强度有限元计算分析[J].电瓷避雷器,2014(4):7-13.
- [10]李圣,卢智成,朱祝兵,等.变电站复合材料绝缘子的动力特性与地震易损性研究[J].工程力学,2016,33(4):91-97.
- [11]曹枚根,高政国,张健,等.高压瓷绝缘子振动疲劳试验及损伤识别[J].高压电器,2017,53(10):7-11.
- [12]张玥,谢强,何畅,等.特高压复合支柱绝缘子力学性能试验研究[J].南方电网技术,2017,11(11):27-33.
- [13]马艳枝.支柱式瓷绝缘子承载性能的数值分析及实验研究[D].北京:中国水利水电科学研究院,2016.
- [14]韦晓星,李西育,何庆文,等.空心复合绝缘子端部结构对弯曲强度的影响[J].电瓷避雷器,2021(6):163-169.
- [15]何远华,刘占民,齐德瑄,等.支柱瓷绝缘子带有加强筋金属法兰的受力分析与设计[J].电瓷避雷器,2021(6):170-176.